CN218371269U - Suspension arm clamp for suspension clamping glass mold - Google Patents

Suspension arm clamp for suspension clamping glass mold Download PDF

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Publication number
CN218371269U
CN218371269U CN202222333186.5U CN202222333186U CN218371269U CN 218371269 U CN218371269 U CN 218371269U CN 202222333186 U CN202222333186 U CN 202222333186U CN 218371269 U CN218371269 U CN 218371269U
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CN
China
Prior art keywords
boom
davit
suspension
locking part
glass mold
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Active
Application number
CN202222333186.5U
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Chinese (zh)
Inventor
陆雯
马连保
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Changshu Weiheng Mould Manufacture Co ltd
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Changshu Weiheng Mould Manufacture Co ltd
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Priority to CN202222333186.5U priority Critical patent/CN218371269U/en
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Publication of CN218371269U publication Critical patent/CN218371269U/en
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Abstract

The utility model discloses a suspension arm anchor clamps of suspension clamp glass mold, which comprises a cross beam, be connected with two horizontal position adjustable davits on the crossbeam, the middle part of crossbeam is equipped with rings, the lower extreme of davit is equipped with the locking part of horizontal setting, the relative terminal surface of locking part is evagination circular conical surface, at least one the davit the locking part for the horizontal position of davit is adjustable, be located on the davit the top of locking part be equipped with the gag lever post that the davit is fixed. The utility model discloses can conveniently hoist and mount glass mold, save workman's physical power.

Description

Suspension arm clamp for suspension clamping glass mold
Technical Field
The utility model relates to an anchor clamps, especially a davit anchor clamps of suspension clamp glass mold.
Background
Conventionally, a pair of glass molds is generally used for molding one glass bottle, and at most two glass bottles are molded simultaneously. The glass bottles are generally wine bottles and beverage bottles, are small in size, so that the size of a single glass mold is not large, and the weight is relatively light, so that in a processing project, the glass mold is mainly conveyed from a transfer box to a processing station only by manpower. Along with the development of the bottle making process, the existing glass mold requires a pair of molds to simultaneously form a plurality of glass bottles, so that the size and the weight of the glass mold are increased greatly, the manual carrying physical consumption is continuously adopted, and the production is not facilitated. In the field of traditional machining, lifting is mainly adopted for carrying parts, but holes capable of being penetrated and lifted are lacked on a glass mold, and a lifting ring cannot be installed, so that a lifting clamp is needed for carrying the glass mold.
SUMMERY OF THE UTILITY MODEL
To the above-mentioned prior art defect, the utility model aims to provide a davit anchor clamps of suspension clamp glass mold solves glass mold's hoist and mount transport problem.
The utility model discloses technical scheme as follows: the utility model provides a suspension arm anchor clamps of suspension clamp glass mold, includes the crossbeam, be connected with two horizontal position adjustable davits on the crossbeam, the middle part of crossbeam is equipped with rings, the lower extreme of davit is equipped with the locking part of horizontal setting, the relative terminal surface of locking part is the evagination circular conical surface, at least one the davit the locking part for the horizontal position of davit is adjustable, be located on the davit the top of locking part be equipped with the gag lever post that the davit is fixed.
Furthermore, in order to operate the locking component conveniently, a transverse threaded through hole is formed in the lower end of the suspension arm, the locking component is provided with a threaded rod, the head end of the threaded rod extends out of the outer side of the suspension arm, and a screwing part matched with a tool is arranged at the head end of the threaded rod.
Furthermore, the cross beam is provided with a transverse groove which penetrates through the cross beam in the longitudinal direction, the top of the suspension arm is provided with an adjusting screw, and the adjusting screw and the top surface of the suspension arm clamp the cross beam to fix the suspension arm.
Furthermore, the lower surface of the cross beam and the top surface of the suspension arm are tooth surfaces which are meshed and matched with each other, the suspension arm can be prevented from transversely moving on the cross beam after being stressed through fitting of the tooth surfaces, and reliability is improved.
Further, in order to facilitate the quick adjustment of the distance between the suspension arms to adapt to the size of the glass mold, the cross beam is provided with scales.
Compared with the prior art, the utility model the advantage lie in:
the conical surface of the locking part is matched with the process holes at the two ends of the glass mold, the limiting rod is combined to prevent the glass mold from swinging, the mold is stably hoisted, the glass is conveniently transferred between the processing position and the carrying position, the physical force of processing operators is saved, and the labor intensity is reduced.
Drawings
FIG. 1 is a schematic structural view of a boom clamp for clamping a glass mold according to an embodiment.
FIG. 2 is a schematic view of a partial structure of the bottom surface of the beam and the top surface of the suspension arm.
FIG. 3 is a schematic view of the boom clamp of embodiment 1 configured to clamp a glass mold.
Detailed Description
The present invention will be further described with reference to the following examples, which should not be construed as limiting the invention.
Please refer to fig. 1 to 2, the suspension arm clamp of the glass mold of the present invention includes a cross beam 1, a suspension ring 2 is installed in the middle of the cross beam 1, the suspension ring 2 can be a stud structure with an annular tail portion and is fixedly connected to the cross beam 1 through a thread, or as shown in this embodiment, the suspension ring 2 is made into a U-shaped structure, and two arms of the U-shaped structure cross the cross beam 1 and are connected to the side of the cross beam 1 through a pin. It should also be noted that the suspension rings 2 can also be directly fabricated on the cross member 1 to form an integral structure with the cross member 1.
The cross beam 1 is provided with two transversely adjustable suspension arms 3 respectively for measuring the suspension rings 2, a longitudinally penetrating transverse groove 101 is formed in the cross beam 1 for facilitating the adjustment of the positions of the suspension arms 3, an adjusting screw 4 penetrates through the transverse groove 101, and the head of the adjusting screw 4 is positioned above the transverse groove 101. The width of the transverse groove 101 is equal to the diameter of the cylindrical section of the adjusting screw 4, so that the forward and backward shaking of the adjusting screw 4 is reduced. The tail of the adjusting screw 4 is in threaded connection with the top of the suspension arm 3, and the head of the adjusting screw 4 is matched with the top surface of the suspension arm 3 to clamp the beam 1 tightly to fix the suspension arm 3 by screwing down the adjusting screw 4, so that the rotation of the suspension arm 3 can be avoided by using two adjusting screws 4 for each suspension arm 3.
As a preferred embodiment, the bottom surface of the beam 1 is provided with a tooth surface 5, the teeth on the tooth surface 5 are arranged in the length direction of the beam 1, and correspondingly, the top surface of the suspension arm 3 is provided with a tooth surface 5 meshed with the bottom surface of the beam 1, so that when the adjusting screw 4 is screwed, the top surface of the suspension arm 3 can be meshed with the bottom surface of the beam 1, and the suspension arm 3 can be prevented from being displaced on the beam 1 when being subjected to a transverse force after the adjusting screw 4 is retracted. At the same time, this solution prevents the boom 3 from rotating because of the meshing of the tooth surfaces 5, so that each boom 3 can be locked in position without rotation by using only one adjusting screw 4, and obviously, adjusting the boom 3 by using only one adjusting screw 4 simplifies the adjustment work and increases the efficiency. As a further preferred embodiment, in order to facilitate the operator to quickly adjust the boom 3 to a desired clearance to fit the size of the glass mold, a scale 102 is further provided on the side of the beam 1, and the scales 102 may be symmetrically provided on both sides of the hoist ring 2 so as to visualize the distance between the two booms 3.
The lower end of the suspension arm 3 is provided with a transverse locking part 7, the opposite end surfaces of the locking parts 7 on the two suspension arms 3 are convex conical surfaces 701, and the transverse position of the locking part 7 of at least one suspension arm 3 relative to the suspension arm 3 is adjustable. In the present embodiment, the locking member 7 provided on only one side of the boom 3 is adjustable, so that the glass mold can be clamped only by adjusting the position of the single locking member 7. Specifically, the lower end of the boom 3 is provided with a transverse threaded through hole, the locking member 7 is provided with a threaded rod, the head end of the threaded rod extends out of the outer side of the boom 3, and the head end of the threaded rod is provided with a screwing part 702 matched with a tool. In the embodiment, the screw part 702 is a hexagon bolt head, and it is understood that the screw part 702 may be a screw head with a cross slot or a straight slot, so as to facilitate the operator to rotate the locking member 7 with a tool. The other side of the boom 3 is welded and fixed with a locking part 7 with a convex conical surface 701. A short limiting rod 6 fixed with the suspension arm 3 is arranged above the locking part 7 on the suspension arm 3, and the limiting rod 6 is also transversely arranged. Referring to fig. 3, when the glass mold is required to be lifted, the distance between the suspension arms 3 is adjusted to a proper distance according to the height of the glass mold, and the adjustment screws 4 are locked to fix the suspension arms 3. Then, the convex conical surface 701 of the locking part 7 fixed on the suspension arm 3 is aligned with a hole (generally a heat dissipation process hole) on the surface of the mold, then the locking part 7 on the other suspension arm 3 is adjusted to move towards the middle and is placed into the hole on the other surface of the mold through the convex conical surface 701, meanwhile, the limiting rod 6 is abutted against the side surface of the glass mold to complete clamping, and finally, the glass mold can be lifted through the lifting ring 2 to be moved.

Claims (5)

1. The utility model provides a suspension arm anchor clamps of suspension clamp glass mold, its characterized in that, includes the crossbeam, be connected with two horizontal position adjustable davits on the crossbeam, the middle part of crossbeam is equipped with rings, the lower extreme of davit is equipped with the locking part of horizontal setting, the relative terminal surface of locking part is the evagination circular conical surface, at least one the davit the locking part for the horizontal position of davit is adjustable, be located on the davit the top of locking part be equipped with the gag lever post that the davit is fixed.
2. The boom clamp of claim 1, wherein the boom is provided with a transverse threaded through hole at its lower end, and the locking member is provided with a threaded rod having a head end protruding from the outer side of the boom, the head end of the threaded rod being provided with a screw for engagement with a tool.
3. The boom clamp of claim 1, wherein the cross beam is provided with a transverse slot extending longitudinally therethrough, and the top of the boom is provided with an adjustment screw that clamps the cross beam with the top surface of the boom to secure the boom.
4. The boom clamp of claim 3, wherein the lower surface of the beam and the top surface of the boom are intermeshing mating toothed surfaces.
5. The boom clamp of claim 1, wherein the beam is graduated.
CN202222333186.5U 2022-09-02 2022-09-02 Suspension arm clamp for suspension clamping glass mold Active CN218371269U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222333186.5U CN218371269U (en) 2022-09-02 2022-09-02 Suspension arm clamp for suspension clamping glass mold

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222333186.5U CN218371269U (en) 2022-09-02 2022-09-02 Suspension arm clamp for suspension clamping glass mold

Publications (1)

Publication Number Publication Date
CN218371269U true CN218371269U (en) 2023-01-24

Family

ID=84970996

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222333186.5U Active CN218371269U (en) 2022-09-02 2022-09-02 Suspension arm clamp for suspension clamping glass mold

Country Status (1)

Country Link
CN (1) CN218371269U (en)

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